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Performance limit of daytime radiative cooling in warm humid environment

机译:温湿润环境中白天辐射冷却的性能限制

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Daytime radiative cooling potentially offers efficient passive cooling, but the performance is naturally limited by the environment, such as the ambient temperature and humidity. Here, we investigate the performance limit of daytime radiative cooling under warm and humid conditions in Okayama, Japan. A cooling device, consisting of alternating layers of SiOsub2/sub and poly(methyl methacrylate) on an Al mirror, is fabricated and characterized to demonstrate a high reflectance for sunlight and a selective thermal radiation in the mid-infrared region. In the temperature measurement under the sunlight irradiation, the device shows 3.4 °C cooler than a bare Al mirror, but 2.8 °C warmer than the ambient of 35 °C. The corresponding numerical analyses reveal that the atmospheric window in λ = 16 ~ 25 μm is closed due to a high humidity, thereby limiting the net emission power of the device. Our study on the humidity influence on the cooling performance provides a general guide line of how one can achieve practical passive cooling in a warm humid environment.
机译:日间辐射冷却可能提供高效的被动冷却,但性能受到环境的自然限制,例如环境温度和湿度。在这里,我们调查日本冈山温暖和潮湿条件下白天辐射冷却的性能限制。由Al镜子上的SiO 2 和聚(甲基丙烯酸甲酯)的交替层组成的冷却装置,并表现为阳光和中红外线中的选择性热辐射的高反射率地区。在阳光照射下的温度测量中,该装置比裸铝镜显示3.4°C冷却,但比35°C的环境温暖2.8°C。相应的数值分析表明,由于高湿度,λ= 16〜25μm的大气窗口被关闭,从而限制了装置的净排放功率。我们对湿度对冷却性能的影响提供了一般导铅,如何在温暖的潮湿环境中实现实际的被动冷却。

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